【24h】

FROM COLLOIDAL CHEMISTRY TO ADVANCED CERAMIC MATERIALS

机译:从胶体化学到高级陶瓷材料

获取原文
获取原文并翻译 | 示例

摘要

The leading role in the fabrication of advanced ceramics and composites play nowadays colloidal processing which can ensure high homogeneity of green bodies, advantageous microstructure and good mechanical properties of as-obtained elements. The main challenge of colloidal processing lies in achieving time-stable, of low viscosity dispersions having high solid loading of well dispersed particles. The key role in the process plays the selection of suitable polymers or monomers, which are able to provide high mechanical strength of a molded element. The applied monomers must perform a series of conditions: they must be water soluble, non-toxic and high mechanical properties must be achieved by as low as possible concentration of polymer or monomer in a ceramic slurry. There are a few commercially available monomers which can be applied in gelcasting process, but they still have some disadvantages. Above all their toxicity is not low enough. Secondly, they must be used in pair with a cross-linking monomer, otherwise the received green bodies would not be rigid enough. For these reasons the synthesis of new low-toxic monomers is essential. The authors therefore performed research on the synthesis of new water-thinnable polymers with designed amphiphilic properties and new monomers on the basis of monosaccharides. Monosaccharides are non-toxic, soluble in water and due to the presence of many hydroxyl groups in a molecule can be applied in gelcasting without adding any external cross-linking agent. The cross-linked polymer network is created by forming hydrogen bonds between polymeric chains. They could play also the role of defflocculants for nano-and submicro-ceramic powders Ceramic suspensions exhibit wide range of rheological behaviors. The authors will also present research on shear thickening fluids which can find applications in such fields where there is a necessity to dampen and disperse energy. This work was focused on study of shear thickening fluids preparation based on nanosilica and poly(propylene glycol) and their rheological properties. The authors will also present also ceramic - polymer composites with a low permittivity and loss tangent based on the barium-strontium titanate (BST) with various dopants and obtained by tape casting method. Dispersions of polymers with different structures were tested as the binders. For obtained ceramic - polymer composites the relative permittivity and loss tangent were measured up to 0.5 THz frequency. This work has been financially supported by the the National Centre for Research and Development (agreement no PBS1/A5/19/2012 ) and by the National Science Centre ( No. DEC-2011/01/B/ST5/06295), Poland.
机译:如今,胶体加工在先进陶瓷和复合材料的制造中起着主导作用,可确保生坯的高度均一性,有利的微观结构和所获得元素的良好机械性能。胶体加工的主要挑战在于实现时间稳定的,具有高固体含量且分散良好的颗粒的低粘度分散体。在该方法中的关键作用在于选择合适的聚合物或单体,这些聚合物或单体能够提供模塑元件的高机械强度。所施加的单体必须满足一系列条件:它们必须是水溶性的,无毒的,并且必须通过在陶瓷浆料中尽可能低的聚合物或单体浓度来实现高机械性能。有几种可商购的单体可用于凝胶浇铸工艺,但它们仍具有一些缺点。首先,它们的毒性还不够低。其次,它们必须与交联单体一起使用,否则接收的生坯将不够坚硬。由于这些原因,合成新的低毒单体是必不可少的。因此,作者对基于单糖的具有两亲特性的新型水可稀释聚合物和新型单体的合成进行了研究。单糖是无毒的,可溶于水,并且由于分子中存在许多羟基,因此无需添加任何外部交联剂即可用于凝胶浇铸。交联的聚合物网络是通过在聚合物链之间形成氢键而形成的。它们还可以充当纳米和亚微陶瓷粉末的去絮凝剂,陶瓷悬浮液具有广泛的流变行为。作者还将介绍剪切增稠流体的研究,可以在需要阻尼和分散能量的领域中找到应用。这项工作的重点是基于纳米二氧化硅和聚丙二醇的剪切增稠液的制备及其流变性能。作者还将介绍具有低掺杂介电常数和损耗角正切的陶瓷-聚合物复合材料,该复合材料基于钛酸钡锶锶(BST)和各种掺杂剂,并通过流延铸造法获得。测试具有不同结构的聚合物的分散体作为粘合剂。对于获得的陶瓷-聚合物复合材料,在高达0.5 THz的频率下测量相对介电常数和损耗角正切。这项工作得到了国家研究与发展中心(协议号PBS1 / A5 / 19/2012)和波兰国家科学中心(号DEC-2011 / 01 / B / ST5 / 06295)的财政支持。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号